English

Opportunistic Beamforming and Dynamic Scheduling for Multi-User MIMO-ISAC Systems

Signal Processing 2025-04-08 v1

Abstract

This research presents a novel framework integrating Flexible-Duplex (FlexD) and Integrated Sensing and Communications (ISAC) technologies to address the challenges of spectrum efficiency and resource optimization in next-generation wireless networks. We develop a unified system model for a dual-functional radar-communication base station with multiple-input multiple-output capabilities, enabling dynamic uplink and downlink channel allocation. The framework maximizes network throughput while maintaining radar sensing performance, subject to signal-to-clutter-plus-noise ratio (SCNR) requirements and power constraints. Given the non-convex and combinatorial nature of the resulting optimization problem, we propose an iterative algorithm that converges to a locally optimal solution. Extensive simulations demonstrate the superiority of the proposed FlexD-ISAC framework compared to conventional half-duplex networks. Additionally, sensitivity analyses reveal the impact of SCNR requirements and power constraints on system performance, providing valuable insights for practical implementation. This work establishes a foundation for future research in dynamic, resource-efficient wireless systems that simultaneously support sensing and communication capabilities.

Keywords

Cite

@article{arxiv.2504.04369,
  title  = {Opportunistic Beamforming and Dynamic Scheduling for Multi-User MIMO-ISAC Systems},
  author = {Tharaka Perera and Saman Atapattu and Chathuranga Weeraddana and Jamie Evans},
  journal= {arXiv preprint arXiv:2504.04369},
  year   = {2025}
}

Comments

5 pages, 5 figures, 2025 IEEE Vehicular Technology Conference: VTC2025-Spring

R2 v1 2026-06-28T22:48:24.907Z